IP Library Granted Patent US 10,923,909
Granted Patent B2
US 10,923,909 · App. 16/028,630 · Granted Feb 16, 2021

Inrush limiter for bidirectional solid state switches

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Quick Facts
Patent No.
US 10,923,909
App. No.
16/028,630
Granted
Feb 16, 2021
Kind
B2
Abstract

A bidirectional switch and a method of the bidirectional switch including, a first enhancement mode n-channel metal oxide semiconductor field effect transistor (n-MOSFET) and a second n-MOSFET electrically connected in a common source configuration. The emitter of an insulated gate bipolar transistor (IGBT) is further electrically connected to the common sources of the n-MOSFET. A control board regulates a first operation of the IGBT and an operation of the first field effect transistor. The control board additionally receives at least one measured characteristic, from a sensor and determines the measured characteristic is below a predetermined threshold. The control board then regulates an operation of the second field effect transistor and a second operation of the IGBT.

Claims (5)

1. A bidirectional switch comprising: a first enhancement mode n-channel metal oxide semiconductor field effect transistor having a source, a gate, and a drain; a second enhancement mode n-channel metal oxide semiconductor field effect transistor having a source, a gate, and a drain, wherein the source of the second enhancement mode n-channel metal semiconductor oxide field effect transistor is electrically connected to the source of the first enhancement mode n-channel metal oxide semiconductor field effect transistor; an inrush switch having an insulated gate bipolar transistor having an emitter, a gate, and a collector, wherein the emitter is electrically connected to the common sources of the first enhancement mode n-channel metal semiconductor oxide field effect transistor and the second enhancement mode n-channel metal oxide semiconductor field effect transistor; wherein the inrush switch does not connect to a ground potential; the insulated gate bipolar transistor and the first enhancement mode n-channel metal oxide semiconductor field effect transistor positioned in a first inrush current path and the insulated gate bipolar transistor and the second enhancement mode n-channel metal oxide semiconductor field effect transistor positioned in a second inrush current path; wherein the first enhancement mode n-channel metal oxide semiconductor field effect transistor and the second enhancement mode n-channel metal oxide semiconductor field effect transistor do not conduct simultaneously.

2. The bidirectional switch of claim 1 , further comprising a resistor electrically connected to the collector of the insulated gate bipolar transistor.

3. The bidirectional switch of claim 1 , further comprising a first terminal of a transient voltage surge suppressor electrically connected to the source of the first field effect transistor, the source of the second field effect transistor, and the emitter of the insulated gate bipolar transistor; and a second terminal of the transient voltage surge suppressor electrically connected to the collector of the insulated gate bipolar transistor.

4. The bidirectional switch of claim 1 , further comprising an anti-parallel diode electrically connected between the source and drain of the first field effect transistor.

5. The bidirectional switch of claim 4 , further comprising an anti-parallel diode electrically connected between the source and drain of the second field effect transistor.

Assignments (4)
MERGER Recorded Apr 28, 2022
From: TE CONNECTIVITY SERVICES GMBH
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 060885/0482 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2021
From: TE CONNECTIVITY CORPORATION
To: TE CONNECTIVITY SERVICES GMBH
Reel/Frame 056524/0226 →
CHANGE OF ADDRESS Recorded Jun 8, 2021
From: TE CONNECTIVITY SERVICES GMBH
To: TE CONNECTIVITY SERVICES GMBH
Reel/Frame 056524/0531 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2018
From: MISHRIKEY, MATTHEW; WAHL, FRANK PETER, III
To: TE CONNECTIVITY CORPORATION
Reel/Frame 046279/0036 →